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Comprehensive minimum cost models for large scale group decision making with consistent fuzzy preference relations

机译:综合最低成本模型,具有一致模糊偏好关系的大规模集团决策

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Nowadays, society demands group decision making (GDM) problems that require the participation of a large number of experts, so-called large scale group decision making (LS-GDM) problems. Logically, the more experts are involved in the decision making process, the more common is the emergence of disagreements in the group. For this reason, consensus reaching processes (CRPs) are key in the resolution of these problems in order to smooth such disagreements in the group and reach consensual solutions. A CRP requires that experts are receptive to change their initial preferences, but demanding excessive changes could lead to deadlocks. The well-known minimum cost consensus (MCC) model allows to obtain an agreed solution by preserving experts’ preferences as much as possible. However, this MCC model only considers the distance among experts and collective opinion, which is not enough to guarantee a desired degree of consensus. To overcome this limitation, it was proposed comprehensive MCC models (CMCC) in which both consensus degree and distance are considered, and CMCC models deal with fuzzy preference relations (FPRs) for modeling experts’ opinions. However, these models are not efficient to deal with LS-GDM problems and the FPRs consistency is ignored in them. Therefore, this paper aims to propose new CMCC models focused on LS-GDM problems in which experts use FPRs whose consistency is taken into account in order to obtain reliable results. A case study is introduced to show the effectiveness of the proposed models.
机译:如今,社会要求小组决策(GDM)要求参与大量专家的问题,所谓的大规模组决策(LS-GDM)问题。逻辑上,更多的专家参与了决策过程,越常见的是本集团分歧的出现。出于这个原因,达成进程(CRP)的共识是解决这些问题的关键,以便在本集团中平滑此类分歧并达成同意解决方案。 CRP要求专家能够接受改变其最初的偏好,但要求过度变化可能导致死锁。众所周知的最低成本共识(MCC)模型允许通过尽可能保护专家的偏好来获得商定的解决方案。但是,此MCC型号仅考虑专家和集体意见之间的距离,这不足以保证所需的共识。为了克服这一限制,提出了全面的MCC模型(CMCC),其中考虑了共识和距离,CMCC模型处理模糊偏好关系(FPRS),用于建模专家意见。但是,这些模型对于处理LS-GDM问题并不有效,并且在其中忽略FPRS一致性。因此,本文旨在提出专注于LS-GDM问题的新型CMCC模型,其中专家使用FPRS,以获得可靠的结果。介绍了一个案例研究以表明所提出的模型的有效性。

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